Literature DB >> 24623173

Beclin-1-mediated autophagy protects spinal cord neurons against mechanical injury-induced apoptosis.

Zhen-Yu Wang1, Jian-Hua Lin, Akram Muharram, Wen-Ge Liu.   

Abstract

Apoptosis has been widely reported to be involved in the pathogenesis associated with spinal cord injury (SCI). Recently, autophagy has also been implicated in various neuronal damage models. However, the role of autophagy in SCI is still controversial and its interrelationship with apoptosis remains unclear. Here, we used an in vitro SCI model to observe a time-dependent induction of autophagy and apoptosis. Mechanical injury induced autophagy markers such as LC3 lipidation, LC3II/LC3I conversion, and Beclin-1 expression. Injured neurons showed decreased cell viability and increased apoptosis. To elucidate the effect of autophagy on apoptosis, the mechanically-injured neurons were treated with the mTOR inhibitor rapamycin and 3-methyl adenine (3-MA), which are known to regulate autophagy positively and negatively, respectively. Rapamycin-treated neurons showed the highest level of cell viability and lowest level of apoptosis among the injured neurons and those treated with 3-MA showed the reciprocal effect. Notably, rapamycin-treated neurons exhibited slightly reduced Bax expression and significantly increased Bcl-2 expression. Furthermore, by plasmid transfection, we showed that Beclin-1-overexpressing neuronal cells responded to mechanical injury with greater LC3II/LC3I conversion and cell viability, lower levels of apoptosis, higher Bcl-2 expression, and unaltered Bax expression as compared to vector control cells. Beclin-1-knockdown neurons showed almost the opposite effects. Taken together, our results suggest that autophagy may serve as a protection against apoptosis in mechanically-injured spinal cord neurons. Targeting mTOR and/or enhancing Beclin-1 expression might be alternative therapeutic strategies for SCI.

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Year:  2014        PMID: 24623173     DOI: 10.1007/s10495-014-0976-1

Source DB:  PubMed          Journal:  Apoptosis        ISSN: 1360-8185            Impact factor:   4.677


  37 in total

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Review 6.  The role of Wnt/mTOR signaling in spinal cord injury.

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Journal:  Autophagy       Date:  2015       Impact factor: 16.016

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Authors:  Nanna-Sophie Brinck Andersen; Sofie Eg Jørgensen; Kristian Alsbjerg Skipper; Simon Müller Larsen; Johanna Heinz; Michelle Mølgaard Thomsen; Ensieh Farahani; Yujia Cai; Alon Schneider Hait; Lise Kay; Jacob Giehm Mikkelsen; Mariane Høgsbjerg Schleimann; Martin Kristian Thomsen; Søren R Paludan; Trine H Mogensen
Journal:  Autophagy       Date:  2020-10-20       Impact factor: 16.016

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